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Transforming growth factor-beta2 antibody attenuates fibrosis in the experimental diabetic rat kidney
1Department of Medicine, University of Birmingham, Edgbaston, Birmingham B15 2TH, UK.
Abstract:
Diabetic nephropathy is characterised by an increase in glomerular and tubular fibrosis that compromises kidney function. The transforming growth factor-betas (TGF-betas) have been shown to play a major role in fibrosis and we have shown that TGF-beta2, in particular, increases co-ordinately with fibrogenesis in the diabetic kidney. The aim of this study was to investigate the changes in expression of extracellular matrix molecules in the diabetic kidney, with and without systemic administration of a recombinant human monoclonal antibody to TGF-beta2. Streptozotocin-induced diabetic rats were split into two groups. The first were treated with 5 mg/kg irrelevant control IgG4 (placebo) and the second treated with 5 mg/kg isoform-specific recombinant monoclonal anti-TGF-beta2 IgG4 (termed CAT-152) systemically every second day for 14 days. A further group of six non-diabetic rats was also used as a control. Various biological parameters were measured daily throughout the experimental period, and on termination of the experiment at 14 days Western blotting was performed on kidney cortices for procollagen-I C-propeptide, which is an indicator of the rate of collagen-I synthesis within the kidney. In the placebo-treated diabetic rats, blood glucose, food consumption, urinary albumin excretion (UAE) and kidney weights were all significantly higher than in the non-diabetic group (P<0.05, n=24, by ANOVA). In the anti-TGF-beta2-treated diabetic rats, kidney weights and UAE levels were decreased when compared with those in placebo-treated diabetics. Western blotting for the procollagen-I C-propeptide in kidney cortices showed a significant increase in levels in placebo-treated diabetic rats compared with non-diabetic controls over the 14 day diabetic period, indicating initiation of fibrogenesis. By contrast, in anti-TGF-beta2-treated diabetic rats, levels of the propeptide remained at non-diabetic levels. In summary, a significant suppression of kidney fibrosis was seen in anti-TGF-beta2-treated diabetic rats, compared with placebo-treated diabetic rats. We conclude that systemic delivery of CAT-152, a neutralising anti-TGF-beta2 antibody, during the acute stages of diabetic nephropathy reduces the rate of pathogenic fibrosis in the kidney.
Insights
Treating diabetic nephropathy with an anti-transforming growth factor-beta2 (TGF-beta2) antibody significantly reduced kidney fibrosis. This therapy normalized collagen synthesis markers, indicating a potential new treatment for diabetic kidney disease.
Area of Science:
- Nephrology
- Endocrinology
- Immunology
Background:
- Diabetic nephropathy is characterized by progressive glomerular and tubular fibrosis, leading to kidney dysfunction.
- Transforming growth factor-betas (TGF-betas), particularly TGF-beta2, are implicated in the fibrotic process within the diabetic kidney.
- Understanding extracellular matrix molecule changes is crucial for developing therapeutic strategies.
Purpose of the Study:
- To investigate extracellular matrix molecule expression changes in diabetic nephropathy.
- To evaluate the efficacy of a recombinant human monoclonal antibody to TGF-beta2 (CAT-152) in mitigating kidney fibrosis.
Main Methods:
- A rat model of streptozotocin-induced diabetes was used.
- Diabetic rats were treated with either a control IgG4 (placebo) or an anti-TGF-beta2 antibody (CAT-152).
- Kidney fibrosis markers, including procollagen-I C-propeptide, were assessed via Western blotting.
Main Results:
- Placebo-treated diabetic rats showed significantly increased blood glucose, urinary albumin excretion (UAE), and kidney weights compared to non-diabetic controls.
- Treatment with CAT-152 reduced kidney weights and UAE levels in diabetic rats compared to placebo.
- CAT-152 treatment prevented the increase in kidney procollagen-I C-propeptide levels observed in placebo-treated diabetic rats.
Conclusions:
- Systemic administration of the anti-TGF-beta2 antibody CAT-152 effectively suppressed kidney fibrosis in diabetic rats.
- CAT-152 treatment normalized markers of collagen synthesis, indicating a reduction in fibrogenesis.
- These findings suggest that targeting TGF-beta2 with neutralizing antibodies is a promising therapeutic approach for acute diabetic nephropathy.
